US5141668A - Naphthalene compound and liquid crystal composition containing the same - Google Patents

Naphthalene compound and liquid crystal composition containing the same Download PDF

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Publication number
US5141668A
US5141668A US07/347,750 US34775089A US5141668A US 5141668 A US5141668 A US 5141668A US 34775089 A US34775089 A US 34775089A US 5141668 A US5141668 A US 5141668A
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liquid crystal
compound
group
crystal composition
compounds
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US07/347,750
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Shinichi Nishiyama
Hideo Yamaoka
Tooru Yamanaka
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Mitsui Petrochemical Industries Ltd
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Mitsui Petrochemical Industries Ltd
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Assigned to MITSUI PETROCHEMICAL INDUSTRIES, LTD. reassignment MITSUI PETROCHEMICAL INDUSTRIES, LTD. ASSIGNMENT OF ASSIGNORS INTEREST. Assignors: NISHIYAMA, SHINICHI, YAMANAKA, TOORU, YAMAOKA, HIDEO
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    • CCHEMISTRY; METALLURGY
    • C07ORGANIC CHEMISTRY
    • C07CACYCLIC OR CARBOCYCLIC COMPOUNDS
    • C07C69/00Esters of carboxylic acids; Esters of carbonic or haloformic acids
    • C07C69/76Esters of carboxylic acids having a carboxyl group bound to a carbon atom of a six-membered aromatic ring
    • CCHEMISTRY; METALLURGY
    • C09DYES; PAINTS; POLISHES; NATURAL RESINS; ADHESIVES; COMPOSITIONS NOT OTHERWISE PROVIDED FOR; APPLICATIONS OF MATERIALS NOT OTHERWISE PROVIDED FOR
    • C09KMATERIALS FOR MISCELLANEOUS APPLICATIONS, NOT PROVIDED FOR ELSEWHERE
    • C09K19/00Liquid crystal materials
    • C09K19/04Liquid crystal materials characterised by the chemical structure of the liquid crystal components, e.g. by a specific unit
    • C09K19/06Non-steroidal liquid crystal compounds
    • C09K19/32Non-steroidal liquid crystal compounds containing condensed ring systems, i.e. fused, bridged or spiro ring systems
    • C09K19/322Compounds containing a naphthalene ring or a completely or partially hydrogenated naphthalene ring

Definitions

  • the present invention relates to a novel naphthalene compound and a liquid crystal composition containing the same. More specifically, the present invention relates to a novel naphthalene compound having an optically active group and a liquid crystal composition containing the same.
  • CRT devices are most frequently used as display devices for OA instruments, and in the field of instruments having display devices such as OA instruments, there is an increasing demand for a miniaturization and reduction of the weight of these instruments, or an enlargement of the picture area and a reduced thickness of the picture unit of the display devices. Accordingly, to meet the respective usages and demands the CRT devices of the prior art have been replaced by various newly developed display devices, for example, liquid crystal display, plasma display, LED display, EL display, and ECD display devices.
  • the liquid crystal display device sends electric signals to a switching element basically by using a liquid crystal compound to change the state of the liquid crystal compound in the switching element, to thereby control the shielding and transmission of light to elicit electric signals, and is practically applied not only as a display device for the OA instruments as mentioned above, but also as a display device for digital watches or portable games, etc., and further, is now used as a display device for moving pictures, such as for a small television receiver.
  • the TN (twist nematic) mode is used as the drive system for current liquid crystal display devices.
  • the TN mode is a system which obtains a display by utilizing the dielectric anisotropy of the molecules in the nematic phase of the liquid crystal compound, whereby the display device is driven by the energy in proportion to the square of the electrical field externally applied (f ⁇ E 2 ).
  • the display system using the TN mode of the prior art is not always an appropriate display device system for displaying moving pictures, particularly as a display device having a large picture area or for a miniature digital television receiver.
  • a display device utilizing STN (super twist nematic) having an improved switching threshold value characteristic as the TN mode is also used, and by utilizing the STN mode, the switching threshold value characteristic can be improved, and thus the contrast of the display device can be improved.
  • this method is the same as the TN mode in that it utilizes a dielectric anisotropy, and therefore, the switching time is prolonged and the same tendency as that of the display device utilizinq the TN mode is exhibited when it is used as a display device for moving pictures, particularly a display device having a large picture area or for a miniature digital television receiver.
  • the switching element using the ferroelectric liquid crystal compound as described above different from the switching element utilizing the TN mode or the STN mode, functions as a switching element only by changing the alignment direction of the molecules of the liquid crystal compound, whereby the switching time is greatly reduced. Further, since the value of Ps ⁇ E given by the spontaneous polarization (Ps) possessed by the ferroelectric liquid crystal compound and the electrical field intensity (E) is the effective energy strength for changing the direction of alignment of the molecules of the liquid crystal compound, the consumption power is also greatly reduced.
  • Ps spontaneous polarization
  • E electrical field intensity
  • Such a ferroelectric liquid crystal compound has two stable states, depending on the direction of the applied electrical field, namely has bistability, and a good switching threshold characteristic, and therefore is particularly suitable as a display device for moving pictures.
  • the ferroelectric liquid crystal compound When such a ferroelectric liquid crystal compound is used for the optical switching element, the ferroelectric liquid crystal compound must have characteristics such as an actuation temperature range near normal temperature, a wide actuation temperature width, and a high switching speed and switching threshold value voltage within a required range.
  • the actuation temperature range is very important when using a ferroelectric liquid crystal compound, and the actuation temperature range does not coincide with the service temperature range in many ferroelectric liquid crystal compounds, although the other characteristics may be very good (see, for example, R. B. Meyer et al, J. de Phs., vol. 36 L-p.69, 1975).
  • ferroelectric liquid crystal compounds having a naphthalene ring are disclosed.
  • the liquid crystal compounds disclosed have a relatively higher practical applicability from the view point of the actuation temperature range, but they do not satisfy all of the other characteristic requirements for a ferroelectric liquid crystal compound, and there is still room for an improvement thereof.
  • the object of the present invention is to provide a novel naphthalene compound which can be used as the liquid crystal compound.
  • Another object of the present invention is to provide a novel liquid crystal composition which can form a display device having excellent characteristics.
  • a further object of the present invention is to provide a novel liquid crystal composition capable of forming an element having excellent characteristics such as an actuation temperature range near normal temperature, a wide actuation temperature width, a high switching speed, and a switching threshold value voltage within a required range.
  • a naphthalene compound having the following formula (I), preferably (I'): ##STR4## wherein X represents a hydrogen atom or a halogen atom, Y and Z independently represent a monovalent group selected from the group consisting of ##STR5## wherein W represents a hydrogen atom or a halogen atom, R represents an alkyl group having 6 to 18 carbon atoms, provided that at least one group of y and Z represents the alkyl group, which is an optically active group including an asymmetric carbon having the following formula (II): wherein A is a group or atom selected from the group consisting of alkyl groups, alkoxy groups, halogen atoms and fluoroalkyl groups, n is an integer of 0 to 3, m is an integer of 3 to 6, and *C represents an asymmetric carbon.
  • A is a group or atom selected from the group consisting of alkyl groups, alkoxy groups, halogen atoms and fluoroalky
  • a liquid crystal composition which comprises a naphthalene compound having the following formula (i), preferably (I'): ##STR6## wherein X represents a hydrogen atom or a halogen atom, Y and Z each independently represent a monovalent group selected from the group consisting of ##STR7## wherein W represents a hydrogen atom or a halogen atom, R represents an alkyl group having 6 to 18 carbon atoms, and the alkyl group consisting at least one alkyl group of Y and Z is an optically active group including an asymmetric carbon having the following formula (II): ##STR8## wherein A is a group or atom selected from the group consisting of alkyl groups, alkoxy groups, halogen atoms and fluoroalkyl groups, n is an integer of 0 to 3 , m is an integer of 3 to 6 , and *C represents an asymmetric carbon.
  • X represents a hydrogen atom or a halogen atom
  • the naphthalene compound according to the present invention exhibits the smectic phase at around room temperature, because an alkyl group having 4 to 7 carbon atoms is attached to the optically active carbon.
  • liquid crystal composition containing a naphthalene compound exhibiting the smectic phase at such a low temperature is practically valuable, since the liquid crystal service temperature is within the required range.
  • the compounds particularly preferable as liquid crystal compounds are those having the formula (3), and specifically, the compounds having the following formula (3-a) are particularly preferred. ##STR14##
  • the naphthalene compound has the naphthalene skeleton at the core portion of the molecule, and therefore, has a specific feature in that the molecule itself has a certain rigidity and that the cohesive force of the molecule as a whole is small.
  • the naphthalene compound of the present invention wherein the alkyl group bonded to the optically active carbon *C is a butyl, pentyl, hexyl or heptyl group exhibits the smectic phase at a low temperature (e.g. 20° C) which cannot be obtained with the naphthalene compounds of the prior art.
  • the naphthalene compound of the present invention can be used alone as the liquid crystal compound or as a mixture with another liquid crystal compound, as long as the liquid crystal phase temperature range of the other liquid crystal compound can be lowered to around room temperature.
  • liquid crystal composition will now be described.
  • the liquid crystal composition of the present invention contains the naphthalene compound represented by the above-mentioned formula (I).
  • the content of the compound represented by the above-mentioned formula (I) can be as required in view of the characteristics of the substituted naphthalene compound used, the viscosity of the composition, the actuation temperature, and the use thereof.
  • examples of the compounds exhibiting the chiral smectic C phase which can be formulated together with the liquid crystal compound represented by the formula (I) include (+)-4'-(2"-methylbutyloxy) phenyl-6-octyloxy-napthalene-2- carboxylic acid ester, 4'-decyloxyphenyl-6-((+)-2"-methylbutyloxy) naphthalene-2-carboxylic acid ester, ##STR18##
  • examples of compounds other than the compounds exhibiting the chiral smectic C phase, which can be formulated with the substituted naphthalene compound having the formula (I) as described above to constitute the liquid crystal composition of the present invention include nematic liquid crystal compounds typically represented by Schiff base type liquid crystal compounds such as: ##STR19## azoxy type liquid crystal compounds such as: ##STR20## benzoic acid ester type liquid crystal compounds such as: ##STR21## cyclohexylcarboxylic acid ester type liquid crystal compounds such as: ##STR22## biphenyl type liquid crystal compounds such as: ##STR23## terphenol type liquid crystal compounds: ##STR24## cyclohexyl type liquid crystal compounds: ##STR25## and pyridine type liquid crystal compounds such as; ##STR26## and further, cholesteric type liquid crystal compounds such as cholesterine hydrochloride, cholesterine nonanooate, and cholesterine oleate, and known smectic liquid
  • the liquid crystal composition according to the present invention may also contain additives which can be formulated in conventional liquid crystal compositions, such as an electroconductivity imparting agent and life enhancer.
  • the following methods may be specifically employed.
  • a display is effected by utilizing two polarizing plates and birefringence of a ferroelectric liquid crystal compound, in which the liquid crystal composition is injected into a thin film cell having a gap of, for example, 2 to 5 ⁇ m, the ferroelectric compound is aligned in parallel to the substrate by utilizing the regulating force of the substrate, interposing the thin film cell having the liquid crystal composition injected therein between two polarizing plates, and an external electrical field is applied to the thin film cell, to thereby change the alignment vector of the ferroelectric liquid crystal compound.
  • the electrode to be used in this case preferably has silica obliquely vapor-deposited thereon.
  • the second method utilizes the bichrome characteristic by mixing the liquid crystal composition of the present invention with a bichrome dye, and in this method a display is effected by changing the absorption of light with the dye by changing the direction of alignment of the ferroelectric liquid crystal composition.
  • the dye to be used in this case is generally a bichrome dye, and examples of such a bichrome dye include azo dyes, naphthoquinone type dyes, cyanine type dyes, and anthraquinone type dyes.
  • the display device produced by using the liquid crystal composition can be driven by drive systems for electrical address display, optical address display, heat address display, and electron beam address, including a static drive, a simple matrix drive, and a composite matrix drive.
  • the naphthalene compound according to the present invention exhibits the smectic phase at around room temperature, and therefore, the liquid crystal composition containing a naphthalene compound exhibiting the smectic phase at such a low temperature is advantageous because the liquid crystal service temperature is within a required range.
  • the liquid crystal composition containing the naphthalene compound as described above has a value of spontaneous polarization and a viscosity coefficient within required ranges, and therefore, in the display method using the smectic liquid phase composition, a high speed response of some 10 ⁇ sec or lower can be obtained. Therefore, by using the smectic liquid crystal composition as the switching element for a display device having a large picture area with a large number of scanning lines, due to the short time required for each scanning, a display of large picture area having a sharp contrast can be obtained.
  • the thin layer cell can act as a memory, and thus a continuous application of voltage is not required and a reduction in the power consumed for the display can be obtained. Further, in this case, the contrast becomes very sharp.
  • the switching element using the smectic liquid crystal composition can be switched only by changing the direction of alignment of the molecules, and the primary item of electrical field intensity acts on the drive, whereby a low voltage primary drive can be obtained.
  • liquid crystal compositions provided by the present invention, by using the smectic liquid crystal composition, a display for a large picture area having a lower consumption power and sharper contrast can be produced.
  • the composition also can be used as a switching element for a display device for moving pictures.
  • Amounts of 11.4 g (50 mmole) of 4-benzyloxybenzoic acid, 36.6 ml (0.5 mole) of thionyl chloride, and 0.1 ml of DMF were mixed and stirred at 70° C for 2 hours, followed by heating under reflux for one hour.
  • phase transition temperatures of this compound are shown as follows: ##STR28##
  • phase transition temperatures of this compound are shown as follows. ##STR34##

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  • Chemical & Material Sciences (AREA)
  • Organic Chemistry (AREA)
  • Crystallography & Structural Chemistry (AREA)
  • Engineering & Computer Science (AREA)
  • Materials Engineering (AREA)
  • Organic Low-Molecular-Weight Compounds And Preparation Thereof (AREA)
  • Liquid Crystal Substances (AREA)
US07/347,750 1988-05-12 1989-05-05 Naphthalene compound and liquid crystal composition containing the same Expired - Fee Related US5141668A (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP63-115093 1988-05-12
JP11509388 1988-05-12

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US (1) US5141668A (ja)
EP (1) EP0341922B1 (ja)
JP (1) JP2672147B2 (ja)
KR (1) KR900017988A (ja)
CN (1) CN1028033C (ja)
AT (1) ATE109127T1 (ja)
CA (1) CA1333611C (ja)
DE (1) DE68917013T2 (ja)

Cited By (5)

* Cited by examiner, † Cited by third party
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US5330678A (en) * 1992-08-19 1994-07-19 Showa Shell Sekiyu Kabushiki Kaisha Liquid crystal compound
US5348685A (en) * 1992-10-09 1994-09-20 Fujitsu Limited Ferroelectric liquid crystal composition
US5422038A (en) * 1989-09-08 1995-06-06 Sumitomo Chemical Company, Limited Optically active naphthalene derivative, process for preparation thereof, liquid crystal composition containing the same as effective component, and liquid crystal element using the same
US5451339A (en) * 1992-05-20 1995-09-19 Showa Shell Sekiyu Kabushiki Kaisha Liquid crystal monomeric compound and liquid crystal polymer compound modified therewith
US7107230B1 (en) 1999-03-31 2006-09-12 Vulcan Portals, Inc. Dynamic market equilibrium management system, process and article of manufacture

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CA2022880A1 (en) * 1989-08-18 1991-02-19 Toyozi Shimizu Carboxylate compounds, liquid crystal compositions containing said compounds and liquid crystal element
JPH03145444A (ja) * 1989-10-30 1991-06-20 Kashima Sekiyu Kk ナフタレン環を含む液晶化合物
CA2031577C (en) * 1989-12-07 2001-03-06 Shoichi Miyakoshi Carboxylate compounds, liquid crystal compositions and liquid crystal elements containing said compounds and method of optical modulation using said elements
US5356561A (en) * 1989-12-07 1994-10-18 Mitsui Petrochemical Industries, Ltd. Carboxylate compounds, liquid crystal compositions and liquid crystal elements containing said compounds and method of optical modulation using said elements
TW207529B (ja) * 1990-06-25 1993-06-11 Mitsui Petroleum Chemicals Ind
US5310500A (en) * 1990-07-05 1994-05-10 Showa Shell Sekiyu Kabushiki Kaisha Liquid crystal compounds
JP2918303B2 (ja) * 1990-07-05 1999-07-12 昭和シェル石油株式会社 光学的三安定状態で駆動する液晶素子
DE69107359T2 (de) * 1990-07-19 1995-06-14 Mitsui Petrochemical Ind Flüssigkristall-Racematmischung, Flüssigkristallzusammensetzung und Flüssigkristallelement, Verfahren zur Herstellung und Verwendung.
US5891359A (en) * 1990-07-30 1999-04-06 Showa Shell Sekiyu Kabushiki Kaisha Liquid crystal compound
GB9105359D0 (en) * 1991-03-13 1991-04-24 Secr Defence Naphthyl organic compounds
US5496500A (en) * 1991-03-13 1996-03-05 The Secretary Of State For Defence In Her Britannic Majesty's Government Of The United Kingdom Of Great Britain & Northern Ireland Naphthyl organic compounds
US5725798A (en) * 1991-12-27 1998-03-10 Mitsui Petrochemical Industries, Ltd. Carboxylate compounds, liquid crystal materials liquid crystal compositions and liquid crystal elements
DE69222925T2 (de) * 1991-12-27 1998-03-26 Mitsui Petrochemical Ind Karbonsäureesterverbindungen, flüssigkristalline Stoffe, flüssigkristalline Zusammensetzungen und flüssigkristalline Bauteile
JP3961592B2 (ja) * 1995-12-15 2007-08-22 リンテック株式会社 新規化合物、これを包含するサーモクロミック材料、これを用いた感熱記録媒体、感熱発色体、サーモラベルおよび感熱インク
US6720039B1 (en) 1997-02-19 2004-04-13 Dai Nippon Printing Co., Ltd. Liquid crystalline compounds and process for producing the same
JP4116109B2 (ja) 1997-02-19 2008-07-09 大日本印刷株式会社 エレクトロルミネッセンス素子用組成物
DE102005022642A1 (de) * 2005-05-11 2006-11-16 Basf Ag 2,6-Naphthylreste enthaltende Verbindungen
CN101074379B (zh) * 2007-06-13 2011-01-19 江苏和成化学材料有限公司 液晶组合物
CN102688577B (zh) * 2012-04-27 2015-03-25 中汽客汽车零部件(厦门)有限公司 火灾自动探测无电启动装置
CN108083830A (zh) * 2017-12-12 2018-05-29 陈太师 一种焦炉和热风炉专用导热硅砖及其制备方法

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Publication number Priority date Publication date Assignee Title
US5422038A (en) * 1989-09-08 1995-06-06 Sumitomo Chemical Company, Limited Optically active naphthalene derivative, process for preparation thereof, liquid crystal composition containing the same as effective component, and liquid crystal element using the same
US5451339A (en) * 1992-05-20 1995-09-19 Showa Shell Sekiyu Kabushiki Kaisha Liquid crystal monomeric compound and liquid crystal polymer compound modified therewith
US5330678A (en) * 1992-08-19 1994-07-19 Showa Shell Sekiyu Kabushiki Kaisha Liquid crystal compound
US5348685A (en) * 1992-10-09 1994-09-20 Fujitsu Limited Ferroelectric liquid crystal composition
US7107230B1 (en) 1999-03-31 2006-09-12 Vulcan Portals, Inc. Dynamic market equilibrium management system, process and article of manufacture

Also Published As

Publication number Publication date
ATE109127T1 (de) 1994-08-15
CN1028033C (zh) 1995-03-29
EP0341922A2 (en) 1989-11-15
DE68917013T2 (de) 1994-12-01
JPH0249754A (ja) 1990-02-20
EP0341922B1 (en) 1994-07-27
EP0341922A3 (en) 1991-01-23
KR900017988A (ko) 1990-12-20
JP2672147B2 (ja) 1997-11-05
CN1038275A (zh) 1989-12-27
DE68917013D1 (de) 1994-09-01
CA1333611C (en) 1994-12-20

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